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Laterality of basic auditory perception

机译:基本听觉感知的横向性

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Laterality (left-right ear differences) of auditory processing was assessed using basic auditory skills: (1) gap detection, (2) frequency discrimination, and (3) intensity discrimination. Stimuli included tones (500, 1000, and 4000 Hz) and wide-band noise presented monaurally to each ear of typical adult listeners. The hypothesis tested was that processing of tonal stimuli would be enhanced by left ear (LE) stimulation and noise by right ear (RE) presentations. To investigate the limits of laterality by (1) spectral width, a narrow-band noise (NBN) of 450-Hz bandwidth was evaluated using intensity discrimination, and (2) stimulus duration, 200, 500, and 1000 ms duration tones were evaluated using frequency discrimination. A left ear advantage (LEA) was demonstrated with tonal stimuli in all experiments, but an expected REA for noise stimuli was not found. The NBN stimulus demonstrated no LEA and was characterised as a noise. No change in laterality was found with changes in stimulus durations. The LEA for tonal stimuli is felt to be due to more direct connections between the left ear and the right auditory cortex, which has been shown to be primary for spectral analysis and tonal processing. The lack of a REA for noise stimuli is unexplained. Sex differences in laterality for noise stimuli were noted but were not statistically significant. This study did establish a subtle but clear pattern of LEA for processing of tonal stimuli.
机译:使用基本的听觉技能评估听觉处理的横向性(左右耳差异):( 1)间隙检测,(2)频率辨别和(3)强度辨别。刺激包括音调(500、1000和4000 Hz)和单声道呈现给典型成人听众的每只耳朵的宽带噪声。测试的假设是,左耳(LE)刺激会增强音调刺激的处理,右耳(RE)会增强噪声的处理。为了研究由(1)频谱宽度引起的横向限制,使用强度判别方法评估了450 Hz带宽的窄带噪声(NBN),并(2)评估了刺激持续时间,200、500和1000 ms持续时间音调使用频率歧视。在所有实验中,均显示左耳优势(LEA)具有音调刺激,但未发现预期的REA噪声刺激。 NBN刺激没有表现出LEA并被表征为噪音。刺激持续时间的变化未发现横向变化。感觉到音调刺激的LEA是由于左耳和右听皮层之间更直接的连接,这已被证明是频谱分析和音调处理的主要方法。不能解释为什么没有REA噪声刺激。注意到在侧向噪声刺激方面的性别差异,但无统计学意义。这项研究的确为处理音调刺激建立了一种微妙但清晰的LEA模式。

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